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OPAX170 Datasheet(PDF) 21 Page - Texas Instruments |
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OPAX170 Datasheet(HTML) 21 Page - Texas Instruments |
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21 / 60 page ![]() 0 10 20 30 40 50 60 0p 100p 200p 300p 400p 500p Capacitive Load (F) RO = 25 RO = 50 C013 G = -1 R OUT = 0 R OUT = 25 R OUT = 50 ± + RI = 1 k VIN = 100mV + 18 V ± 18 V CL OPA172 + ± RF = 1 k ROUT 0 10 20 30 40 50 0p 100p 200p 300p 400p 500p Capacitive Load (F) RO = 25 RO = 50 C013 R OUT= 0 R OUT= 25 R OUT= 50 G = +1 CL RL ± + VIN = 100mV + 18 V ± 18 V OPA172 + ± ROUT Time (200 s/div) C011 V OUT V IN 37 VPP Sine Wave (±18.5V) ± + VOUT + 18 V ± 18 V OPA172 + ± 21 OPA172, OPA2172, OPA4172 www.ti.com SBOS618I – DECEMBER 2013 – REVISED MAY 2018 Product Folder Links: OPA172 OPA2172 OPA4172 Submit Documentation Feedback Copyright © 2013–2018, Texas Instruments Incorporated 8.3.2 Phase-Reversal Protection The OPAx172 family has internal phase-reversal protection. Many op amps exhibit a phase reversal when the input is driven beyond the linear common-mode range. This condition is most often encountered in noninverting circuits when the input is driven beyond the specified common-mode voltage range, causing the output to reverse into the opposite rail. The input of the OPAx172 prevents phase reversal with excessive common-mode voltage. Instead, the appropriate rail limits the output voltage. This performance is shown in Figure 43. Figure 43. No Phase Reversal 8.3.3 Capacitive Load and Stability The dynamic characteristics of the OPAx172 are optimized for commonly-used operating conditions. The combination of low closed-loop gain and high capacitive loads decreases the phase margin of the amplifier and may lead to gain peaking or oscillations. As a result, heavier capacitive loads must be isolated from the output. The simplest way to achieve this isolation is to add a small resistor (for example, ROUT = 50 Ω) in series with the output. Figure 44 and Figure 45 show graphs of small-signal overshoot versus capacitive load for several values of ROUT. Refer to Application Bulletin SBOA015 (AB-028), Feedback Plots Define Op Amp AC Performance, available for download from www.ti.com, for details of analysis techniques and application circuits. Figure 44. Small-Signal Overshoot vs Capacitive Load (100-mV Output Step) Figure 45. Small-Signal Overshoot vs Capacitive Load (100-mV Output Step) |
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